CATHODE - LFP - T5

CATHODE - LFP - T5

$450.00
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CATHODE - LFP - T5

CATHODE - LFP - T5

$450.00

Lithium Iron Phosphate (LFP) — Carbon-Coated Cathode Powder (Grade T5)
Spherical, low-temperature grade 

CATHODE-LFP-T5 is a carbon-coated lithium iron phosphate (LiFePO₄) cathode material supplied as a spherical, high-tap-density powder. The olivine LFP structure is valued for its thermal and chemical stability, long cycle life, and inherent safety relative to nickel- and cobalt-based cathodes, with a flat ~3.2 V discharge plateau. The conductive carbon coating supports rate capability and first-cycle efficiency, while the spherical secondary-particle morphology aids packing density and slurry processing. This grade is oriented toward low-temperature performance and is suited to research, prototyping, and pilot-scale electrode development in both energy-storage and EV-adjacent applications.

Applications

  • Lithium‑ion cathode powder for LFP battery manufacturing

  • Ideal for EV packs, e‑mobility, and power tools, robotics, and drones

  • Excellent for solar + battery energy storage systems (ESS)

  • High cycle‑life chemistry for commercial and industrial battery packs

  • Stable, safe, thermally robust cathode material

Property Typical Value
Chemical name Lithium Iron Phosphate (LiFePO₄)
CAS number 15365-14-7
Molecular weight 157.76 g/mol
Morphology Spherical, carbon-coated
Carbon coating ~1.5 wt%
Particle size (D50) 7.0 ± 3.0 µm
Specific surface area (BET) 9.0 ± 2.0 m²/g
Tap density ~1.5 g/cm³
Compaction density ≥2.1 g/cm³
First discharge capacity (0.1C) ≥154 mAh/g
First coulombic efficiency (0.1C) ≥95%
Nominal voltage / window 3.2 V (2.5–3.65 V)
Moisture Reported on lot Certificate of Analysis
Appearance Grey/black powder

Values shown are typical properties for this (BTR / Changzhou Liyuan T-series) grade and are not guaranteed for any specific lot. A lot-specific Certificate of Analysis is available on request. Sold for research and industrial use. Bulk quantities available upon request. Dry product before use, vacuum dry 80C-120C typical. Repackaged for precision applications. 


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